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An Object-oriented computational framework for the simulation of variably saturated flow in soils, using a reduced complexity model

机译:面向对象的计算框架,使用简化的模型来模拟土壤中的饱和饱和流

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摘要

A simple and efficient computational modelling framework is presented for the simulation of variably saturated flows in porous media, which is not based on a conventional numerical solution of the Richards' equation. The computational domain is discretised with a regular grid and simple rules govern the flow dynamics. Each cell can have distinct hydraulic properties and its state depends only on the state of its neighbouring cells. These concepts make the simulation of large-scale variably saturated flow in heterogeneous media easier and computationally more efficient. Due to its object oriented design, the presented framework is very flexible and easily extensible and can be used for various engineering applications (e.g. prediction of rainfall-induced landslides, water and solute transport in agricultural soils), where the simulation of variably saturated flow is crucial. The modelling framework has been validated with experimental results and analytical solutions for 2-D and 3-D problems available from the literature, showing very good agreement even in cases where strong non linearities existed.
机译:提出了一种简单有效的计算建模框架,用于模拟多孔介质中的可变饱和流,该框架不基于Richards方程的常规数值解。计算域通过规则网格离散化,并且用简单的规则控制流动动力学。每个单元可以具有不同的水力特性,其状态仅取决于其相邻单元的状态。这些概念使在异构介质中大规模可变饱和流的模拟更加容易,并且计算效率更高。由于其面向对象的设计,因此提出的框架非常灵活且易于扩展,可用于各种工程应用(例如,预测降雨引起的滑坡,农业土壤中水和溶质的运移),其中模拟了饱和流的变化。关键。建模框架已经通过实验结果和文献中针对2-D和3-D问题的解析解决方案进行了验证,即使在存在强非线性的情况下,也显示出很好的一致性。

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